Wiśniewska Ewa, Majewska-Sawka Anna
Plant Breeding and Acclimatization Institute, Powstańców Wielkopolskich 10, 85-090 Bydgoszcz, Poland.
Plant Cell Rep. 2007 Sep;26(9):1457-67. doi: 10.1007/s00299-007-0348-1. Epub 2007 Apr 4.
Arabinogalactan proteins (AGPs) represent a class of proteoglycans implicated in the development and differentiation of cells and tissues both in planta and in vitro. Here we report that AGP-rich extracts isolated from media of embryogenic and non-embryogenic suspension cultures of sugar beet (Beta vulgaris L.) are able to enhance the organogenesis of guard protoplast-derived callus and to increase the number of shoots formed, in comparison to control cultures. Immunocytochemical detection of carbohydrate antigens in the extracts revealed the presence of epitopes that typify both AGP and pectin, the latter being frequently bound to AGPs or, in some cases, even contributing to the polysaccharide structure of proteoglycan molecules. The most abundant epitopes proved to be those recognized by the JIM13, LM2, and MAC207 antibodies, whereas some others could be found only in relatively small or trace amounts--these included epitopes recognized by JIM16, JIM5, and LM6. Surprisingly, the JIM4- and JIM8-binding epitopes that are expressed in the course of in vitro morphogenetic processes of many species could not be detected at all in sugar beet AGPs. This is the first report of the improvement of sugar beet protoplast-derived callus organogenesis by exogenous AGP-rich extracts, an achievement that will have great impact on the biotechnological applications of protoplast technology in this species.
阿拉伯半乳聚糖蛋白(AGPs)是一类蛋白聚糖,在植物体内和体外的细胞及组织发育与分化过程中发挥作用。本文报道,与对照培养物相比,从甜菜(Beta vulgaris L.)胚性和非胚性悬浮培养物培养基中分离得到的富含AGP的提取物能够促进保卫细胞原生质体来源愈伤组织的器官发生,并增加形成的芽的数量。对提取物中碳水化合物抗原的免疫细胞化学检测显示,存在代表AGP和果胶的表位,后者通常与AGP结合,或在某些情况下甚至构成蛋白聚糖分子的多糖结构。最丰富的表位被证明是那些能被JIM13、LM2和MAC207抗体识别的表位,而其他一些表位仅能以相对少量或痕量被发现——这些包括被JIM16、JIM5和LM6识别的表位。令人惊讶的是,在许多物种的体外形态发生过程中表达的JIM4和JIM8结合表位在甜菜AGP中根本无法检测到。这是关于外源富含AGP的提取物改善甜菜原生质体来源愈伤组织器官发生的首次报道,这一成果将对该物种原生质体技术的生物技术应用产生重大影响。